RAISIN - QT Network for Single-ion Implantation Technologies and Science
RAISIN - 单离子植入技术和科学的 QT 网络
基本信息
- 批准号:EP/W027070/1
- 负责人:
- 金额:$ 56.61万
- 依托单位:
- 依托单位国家:英国
- 项目类别:Research Grant
- 财政年份:2022
- 资助国家:英国
- 起止时间:2022 至 无数据
- 项目状态:未结题
- 来源:
- 关键词:
项目摘要
There are several competing methodologies that have shown the promise of exploiting quantum systems, but the most practical route for large-scale industrial reproduction, and the one most likely to be adopted commercially, is through the exploitation of implanted impurities in the solid-state. Very successful quantum technology (QT) platforms using single impurities include defect complexes in diamond (field sensors, imaging etc), donors in silicon (quantum computer gates), and rare earth ions in oxides (quantum memory and quantum communications repeaters). Implantation is an existing scalable fabrication route, and there are several emerging strategies to deterministic implanted single impurities (ISI) to produce compact large-arrays of qubits or multiple, identical single-qubit devices. Deterministic ISI success rates as high as 99.87% are claimed. However, there are very few quantum technology prototype examples where the impurity is deterministically placed, and none where the impurity is deterministically placed by implantation. There is only one report of a post-implant quality control at the single atom level. The challenges are therefore to verify the deterministic ISI post-hoc, drive innovation, and to produce valuable QTs based on this capability.The University of Surrey is one of several groups internationally that are leading the development of the tools that will enable ISI. Uniquely, we are proposing the establishment of an international network, RAISIN (Roadmap for Applications of Implanted Single Impurities Network), to promote and facilitate collaborations between these groups that are developing the enabling technology (ISI developers) and the many diverse research activities of groups who are working at the leading edge of quantum technologies and sciences (QT applications community). RAISIN will be forward-looking and will therefore have a strong emphasis on the quantum technologies and science that it will enable (the QT "pull") as well as the ISI development (the ISI "push"). It will intentionally have a well-defined scope associated with the quantum science and technologies that low-energy ISI will enable. As such it will complement existing networks that have overlapping scopes. In particular, the IAEA coordinated research project: 'Ion beam induced spatio-temporal structural evolution of materials: accelerators for a new technology era' has a stronger emphasis on accelerator technology and focusses on collaboration among ISI developers, while for example, the International Silicon Quantum Electronics Workshop attendees include a subset of impurity QT scientists (along with other silicon-based QTs involving quantum dots). A roadmap for ISI QT's will be developed to accelerate the development of quantum technologies in general.
有几种相互竞争的方法已显示出利用量子系统的前景,但大规模工业复制的最实用途径,也是最有可能在商业上采用的途径,是通过利用固态中的注入杂质。使用单一杂质的非常成功的量子技术 (QT) 平台包括金刚石中的缺陷复合物(场传感器、成像等)、硅中的供体(量子计算机门)和氧化物中的稀土离子(量子存储器和量子通信中继器)。注入是一种现有的可扩展制造路线,并且有几种新兴策略可以确定性注入单一杂质(ISI),以生产紧凑的大型量子位阵列或多个相同的单量子位器件。据称确定性 ISI 成功率高达 99.87%。然而,确定性地放置杂质的量子技术原型示例非常少,并且没有通过注入确定性地放置杂质的量子技术原型示例。只有一份关于单原子水平的植入后质量控制的报告。因此,面临的挑战是事后验证确定性 ISI、推动创新并基于此能力生成有价值的 QT。萨里大学是国际上领导 ISI 工具开发的几个团体之一。独特的是,我们提议建立一个国际网络 RAISIN(植入单一杂质网络应用路线图),以促进和促进这些正在开发使能技术的团体(ISI 开发人员)和团体的许多不同研究活动之间的合作他们致力于量子技术和科学的前沿(QT 应用社区)。 RAISIN 将具有前瞻性,因此将重点关注其所支持的量子技术和科学(QT“拉动”)以及 ISI 开发(ISI“推动”)。它将有意拥有与低能 ISI 将实现的量子科学和技术相关的明确范围。因此,它将补充范围重叠的现有网络。特别是,IAEA 协调研究项目:“离子束诱导材料时空结构演化:新技术时代的加速器”更加强调加速器技术,并注重 ISI 开发商之间的合作,而例如,国际硅量子电子研讨会的与会者包括一部分杂质 QT 科学家(以及其他涉及量子点的硅基 QT)。将制定 ISI QT 路线图,以加速量子技术的总体发展。
项目成果
期刊论文数量(1)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
Detection Sensitivity Limit of Hundreds of Atoms with X-Ray Fluorescence Microscopy
X 射线荧光显微镜对数百个原子的检测灵敏度极限
- DOI:http://dx.10.48550/arxiv.2310.03409
- 发表时间:2023
- 期刊:
- 影响因子:0
- 作者:Masteghin M
- 通讯作者:Masteghin M
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Steven Clowes其他文献
Temperature dependent optical properties of PbS nanocrystals
PbS 纳米晶体的温度依赖性光学特性
- DOI:
10.1088/0957-4484/23/27/275701 - 发表时间:
2012-07-11 - 期刊:
- 影响因子:3.5
- 作者:
M. N. Nordin;Juerong Li;Steven Clowes;Richard J. Curry - 通讯作者:
Richard J. Curry
Steven Clowes的其他文献
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{{ truncateString('Steven Clowes', 18)}}的其他基金
Route to high-precision positioning of single ion-implanted impurities in silicon
硅中单离子注入杂质的高精度定位之路
- 批准号:
EP/X018989/1 - 财政年份:2023
- 资助金额:
$ 56.61万 - 项目类别:
Research Grant
NON-MAGNETIC SEMICONDUCTOR SPINTRONICS: INNOVATIONS IN NANOSCALE, HIGHLY SPIN-ORBIT COUPLED QUANTUM WELL SYSTEMS
非磁性半导体自旋电子学:纳米级、高度自旋轨道耦合量子阱系统的创新
- 批准号:
EP/E055583/1 - 财政年份:2007
- 资助金额:
$ 56.61万 - 项目类别:
Fellowship
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